Wang Lin, Gundelach Justin H, Bram Richard J
Department of Biochemistry and Molecular Biology, Mayo Clinic College of Medicine, Rochester, MN, 55905, USA.
Department of Pediatric and Adolescent Medicine, Mayo Clinic College of Medicine, Rochester, MN, 55905, USA.
Cancer Cell Microenviron. 2017;4(3). Epub 2017 Oct 2.
Treatment of cancer is frequently unsuccessful related to the loss of apoptotic signaling in malignant cells. This is a particular problem for high-grade gliomas, such as Glioblastoma Multiforme (GBM), which are almost universally fatal within a year or so of diagnosis. Novel therapies that capitalize on non-apoptotic cell death pathways may yield more effective outcomes, if their underlying mechanisms can be more completely deciphered. In a recent publication (ref 10), the mechanisms by which cellular cyclophilins support GBM cell survival have been identified. Inhibition of cyclophilins activated paraptosis, which relied on a combination of endoplasmic reticulum (ER) stress and transient activation of autophagy. An important aspect of this effect was the relative rates of cap-dependent versus cap-independent protein synthesis, which were differentially modulated by protein synthesis inhibitors or mTOR inhibition. Although cycloheximide has previously been characterized as an inhibitor of paraptosis, in the case of cyclophilin inhibition, it appears to significantly enhance stress-related paraptosis and cell death. This work reveals an important role for cap-independent protein translation and autophagy in the ability of GBM cells to resist non-apoptotic death, and adds to our understanding of the events that underlie paraptosis.
癌症治疗常常不成功,这与恶性细胞中凋亡信号的丧失有关。对于高级别胶质瘤,如多形性胶质母细胞瘤(GBM)来说,这是一个特别棘手的问题,这类肿瘤在确诊后一年内几乎普遍致命。如果能够更全面地解读其潜在机制,那么利用非凋亡性细胞死亡途径的新型疗法可能会产生更有效的治疗效果。在最近发表的一篇论文(参考文献10)中,已经确定了细胞亲环蛋白支持GBM细胞存活的机制。亲环蛋白的抑制激活了类凋亡,这依赖于内质网(ER)应激和自噬的短暂激活。这种效应的一个重要方面是帽依赖性与帽非依赖性蛋白质合成的相对速率,它们受到蛋白质合成抑制剂或mTOR抑制的不同调节。尽管环己酰亚胺此前被认定为类凋亡的抑制剂,但在亲环蛋白抑制的情况下,它似乎会显著增强与应激相关的类凋亡和细胞死亡。这项研究揭示了帽非依赖性蛋白质翻译和自噬在GBM细胞抵抗非凋亡性死亡能力中的重要作用,并增进了我们对类凋亡潜在机制的理解。